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Genome-wide analysis of gene expression and protein secretion of Babesia canis during virulent infection identifies potential pathogenicity factors

机译:犬传染性巴贝斯犬强毒感染过程中基因表达和蛋白质分泌的全基因组分析确定了潜在的致病因素

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摘要

Infections of dogs with virulent strains of Babesia canis are characterized by rapid onset and high mortality, comparable to complicated human malaria. As in other apicomplexan parasites, most Babesia virulence factors responsible for survival and pathogenicity are secreted to the host cell surface and beyond where they remodel and biochemically modify the infected cell interacting with host proteins in a very specific manner. Here, we investigated factors secreted by B. canis during acute infections in dogs and report on in silico predictions and experimental analysis of the parasite’s exportome. As a backdrop, we generated a fully annotated B. canis genome sequence of a virulent Hungarian field isolate (strain BcH-CHIPZ) underpinned by extensive genome-wide RNA-seq analysis. We find evidence for conserved factors in apicomplexan hemoparasites involved in immune-evasion (e.g. VESA-protein family), proteins secreted across the iRBC membrane into the host bloodstream (e.g. SA- and Bc28 protein families), potential moonlighting proteins (e.g. profilin and histones), and uncharacterized antigens present during acute crisis in dogs. The combined data provides a first predicted and partially validated set of potential virulence factors exported during fatal infections, which can be exploited for urgently needed innovative intervention strategies aimed at facilitating diagnosis and management of canine babesiosis.
机译:狗犬巴贝斯病菌的强毒株感染的特点是起效快,死亡率高,可与复杂的人类疟疾相提并论。与其他apicomplexan寄生虫一样,大多数负责存活和致病性的巴贝斯病毒力因子都分泌到宿主细胞表面,并以非常特定的方式重塑和生化修饰与宿主蛋白相互作用的被感染细胞。在这里,我们调查了犬急性感染过程中犬双歧杆菌分泌的因子,并报告了寄生虫的出口蛋白质组的计算机预测和实验分析。作为背景,我们通过全面的全基因组RNA-seq分析生成了有毒匈牙利田间分离株(菌株BcH-CHIPZ)的完整注释犬双歧杆菌基因组序列。我们发现了涉及免疫逃逸的apicomplexan血液寄生虫(例如VESA蛋白家族),通过iRBC膜分泌到宿主血流中的蛋白(例如SA-和Bc28蛋白家族),潜在的月光照蛋白(例如profilin和组蛋白)的保守因素的证据。 ),以及犬急性危机期间存在的未鉴定抗原。合并的数据提供了致命感染期间输出的潜在毒力因子的第一个预测的且部分验证的集合,可将其用于急需的创新干预策略,以促进犬幼虫病的诊断和管理。

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